Objective: To compare the efficacy of dexpanthenol/ sodium hyaluronate fixed combination with sodium hyaluronate eye drops in the treatment of dry eye disease (DED) and ocular surface inflammation (OSI) following cataract surgery. Material and Methods: Sixty-three patients who underwent cataract surgery were included in this study. In addition to the standard postoperative treatment, one group (study group, n=30 eyes) received dexpanthenol/sodium hyaluronate fixed combination eye drops, while the other group was given sodium hyaluronate eye drops (control group, n=33 eyes). The 2 groups were compared in terms of best-corrected visual acuity, tear break-up time (TBUT), corneal flourescein staining, ocular surface disease index (OSDI) and in vivo confocal microscopy (IVCM) findings. Results: While TBUT was significantly greater in the study group than the control group (11.2, 8.9, respectively), corneal floresein staining (0.13, 0.48, respectively) and OSDI (10.8, 17.1, respectively) were significantly lower in the study group compared to the control group at postoperative 4 months. In IVCM, the number of dendritic cells and activated keratocytes were significantly lower in the study group (40.8, 13.9 respectively) compared to the control group (51.2, 18.0, respectively). In addition, while the total number of nerves in the study group (4.57) was higher than that of the control group (3.91), the nerve tortuosity was lower in the study group (1.57, 2.18, respectively). Conclusion: Dexpanthenol/sodium hyaluronate fixed combination eye drops could be preferred as an adjuvant for the treatment of DED and OSI following cataract surgery.
Keywords: Cataract surgery; dry eye disease; dexpanthenol/sodium hyaluronate fixed combination; in vivo confocal microscopy; ocular surface inflammation
Amaç: Katarakt cerrahisi sonrası kuru göz hastalığı (KGH) ve oküler yüzey inflamasyonu (OYİ) tedavisinde dekspantenol/sodyum hyaluronat fiks kombinasyon etkinliğini, sodyum hyaluronat göz damlası ile karşılaştırmaktır. Gereç ve Yöntemler: Çalışmaya, katarakt cerrahisi uygulanan 63 hasta dâhil edildi. Standart postoperatif tedaviye ek olarak, bir gruba (çalışma grubu, n=30 göz) dekspantenol/sodyum hyaluronat fiks kombinasyon göz damlası, diğer gruba ise sodyum hyaluronat göz damlası (kontrol grubu, n=33 göz) verildi. İki grup, en iyi düzeltilmiş görme keskinliği (EİDGK), gözyaşı kırılma zamanı (GKZ), fluoresein ile korneal boyanma, oküler yüzey hastalığı indeksi (OYHİ) ve in vivo konfokal mikroskopi (IVKM) bulguları açısından karşılaştırıldı. Bulgular: Ameliyat sonrası 4. ayda GKZ çalışma grubunda kontrol grubuna göre (11,2-8,9, sırasıyla) anlamlı olarak daha yüksek iken, fluoresein ile korneal boyanma (0,13-0,48, sırasıyla) ve OYHİ (10,8-17,1, sırasıyla) çalışma grubunda kontrol grubuna göre anlamlı derecede düşüktü. IVKM'de dendritik hücre ve aktive keratosit sayısı, çalışma grubunda (40,8-13,9, sırasıyla) kontrol grubuna göre (51,2-18,0, sırasıyla) daha düşük saptandı. Ayrıca çalışma grubunda sinir sayısı (4,57) kontrol grubuna göre (3,91) daha yüksek iken, sinir kıvrımlanması çalışma grubunda (1,57-2,18, sırasıyla) daha azdı. Sonuç: Dekspantenol/sodyum hyaluronat fiks kombinasyon göz damlası, katarakt cerrahisi sonrası KGH ve OYİ tedavisinde yardımcı ajan olarak tercih edilebilir.
Anahtar Kelimeler: Katarakt cerrahisi; kuru göz hastalığı; dekspantenol/sodyum hyaluronat fiks kombinasyonu; in vivo konfokal mikroskopi; oküler yüzey inflamasyonu
- Gomes JAP, Azar DT, Baudouin C, Efron N, Hirayama M, Horwath-Winter J, et al. TFOS DEWS II iatrogenic report. Ocul Surf. 2017;15(3):511-38. [Crossref] [PubMed]
- Naderi K, Gormley J, O'Brart D. Cataract surgery and dry eye disease: a review. Eur J Ophthalmol. 2020;30(5):840-55. [Crossref] [PubMed] [PMC]
- Mencucci R, Boccalini C, Caputo R, Favuzza E. Effect of a hyaluronic acid and carboxymethylcellulose ophthalmic solution on ocular comfort and tear-film instability after cataract surgery. J Cataract Refract Surg. 2015;41(8):1699-704. [Crossref] [PubMed]
- Baumeister M, Bühren J, Ohrloff C, Kohnen T. Corneal re-epithelialization following phototherapeutic keratectomy for recurrent corneal erosion as in vivo model of epithelial wound healing. Ophthalmologica. 2009;223(6):414-8. [Crossref] [PubMed]
- Mencucci R, Favuzza E, Bottino P, Mazzantini C, Zanotto E, Pellegrini-Giampietro DE, et al. A new ophthalmic formulation containing antiseptics and dexpanthenol: In vitro antimicrobial activity and effects on corneal and conjunctival epithelial cells. Exp Eye Res. 2020;201:108269. [Crossref] [PubMed]
- Craig JP, Nichols KK, Akpek EK, Caffery B, Dua HS, Joo CK, et al. TFOS DEWS II Definition and Classification Report. Ocul Surf. 2017;15(3):276-83. [Crossref] [PubMed]
- Wolffsohn JS, Arita R, Chalmers R, Djalilian A, Dogru M, Dumbleton K, et al. TFOS DEWS II diagnostic methodology report. Ocul Surf. 2017;15(3):539-74. [Crossref] [PubMed]
- Bron AJ, Evans VE, Smith JA. Grading of corneal and conjunctival staining in the context of other dry eye tests. Cornea. 2003;22(7):640-50. [Crossref] [PubMed]
- Grubbs JR Jr, Tolleson-Rinehart S, Huynh K, Davis RM. A review of quality of life measures in dry eye questionnaires. Cornea. 2014;33(2):215-8. [Crossref] [PubMed] [PMC]
- Niederer RL, McGhee CN. Clinical in vivo confocal microscopy of the human cornea in health and disease. Prog Retin Eye Res. 2010;29(1):30-58. [Crossref] [PubMed]
- Cox SM, Kheirkhah A, Aggarwal S, Abedi F, Cavalcanti BM, Cruzat A, et al. Alterations in corneal nerves in different subtypes of dry eye disease: an in vivo confocal microscopy study. Ocul Surf. 2021;22:135-42. [Crossref] [PubMed]
- Simsek C, Kojima T, Nagata T, Dogru M, Tsubota K. Changes in murine subbasal corneal nerves after scopolamine-induced dry eye stress exposure. Invest Ophthalmol Vis Sci. 2019;60(2):615-23. [Crossref] [PubMed]
- Oliveira-Soto L, Efron N. Morphology of corneal nerves using confocal microscopy. Cornea. 2001;20(4):374-84. [Crossref] [PubMed]
- Wan KH, Chen LJ, Young AL. Depression and anxiety in dry eye disease: a systematic review and meta-analysis. Eye (Lond). 2016;30(12):1558-67. [Crossref] [PubMed] [PMC]
- Basilious A, Xu CY, Malvankar-Mehta MS. Dry eye disease and psychiatric disorders: a systematic review and meta-analysis. Eur J Ophthalmol. 2022;32(4):1872-89. [Crossref] [PubMed] [PMC]
- Oh T, Jung Y, Chang D, Kim J, Kim H. Changes in the tear film and ocular surface after cataract surgery. Jpn J Ophthalmol. 2012;56(2):113-8. [Crossref] [PubMed]
- Li XM, Hu L, Hu J, Wang W. Investigation of dry eye disease and analysis of the pathogenic factors in patients after cataract surgery. Cornea. 2007;26(9 Suppl 1):S16-20. [Crossref] [PubMed]
- Li-Mei W, Jie T, Shan-He W, Dong-Mei M, Peng-Jiu Y. Anti-inflammatory and anti-oxidative effects of dexpanthenol on lipopolysaccharide induced acute lung injury in mice. Inflammation. 2016;39(5):1757-63. [Crossref] [PubMed]
- Korkmaz MF, Parlakpinar H, Erdem MN, Ceylan MF, Ediz L, Samdanci E, et al. The therapeutic efficacy of dexpanthenol on sciatic nerve injury in a rat model. Br J Neurosurg. 2020;34(4):397-401. [Crossref] [PubMed]
- Wen Y, Zhang X, Chen M, Han D. Sodium hyaluronate in the treatment of dry eye after cataract surgery: a meta-analysis. Ann Palliat Med. 2020;9(3):927-39. [Crossref] [PubMed]
- Kocabeyoğlu S, Dikmetaş Ö. Enfeksiyöz keratitlerde tanı ve ayırıcı tanıda ön segment görüntüleme yöntemleri. Yıldırım N, editör. Kornea Hastalıklarında Ön Segment Görüntüleme ve Ayırıcı Tanıda Kullanımı. 1. Baskı. Ankara: Türkiye Klinikleri; 2021. p.50-61.
- Aggarwal S, Kheirkhah A, Cavalcanti BM, Cruzat A, Jamali A, Hamrah P. Correlation of corneal immune cell changes with clinical severity in dry eye disease: an in vivo confocal microscopy study. Ocul Surf. 2021;19:183-9. [Crossref] [PubMed] [PMC]
- Hwang J, Dermer H, Galor A. Can in vivo confocal microscopy differentiate between sub-types of dry eye disease? A review. Clin Exp Ophthalmol. 2021;49(4):373-87. [Crossref] [PubMed]
- Şimşek C. Sjögren sendromuna bağlı gelişen kuru göz hastalığında meydana gelen oküler yüzey değişikliklerinin konfokal mikroskopi ile değerlendirilmesi [Evaluation of ocular surface changes in dry eye disease due to Sjögren's syndrome by confocal microscopy]. Ege Tıp Dergisi. 2022;61(1):80-6. [Crossref]
- Yao K, Bao Y, Ye J, Lu Y, Bi H, Tang X, et al. Efficacy of 1% carboxymethylcellulose sodium for treating dry eye after phacoemulsification: results from a multicenter, open-label, randomized, controlled study. BMC Ophthalmol. 2015;15:28. [Crossref] [PubMed] [PMC]
- Park DH, Chung JK, Seo DR, Lee SJ. Clinical effects and safety of 3% diquafosol ophthalmic solution for patients with dry eye after cataract surgery: a randomized controlled trial. Am J Ophthalmol. 2016;163:122-31.e2. [Crossref] [PubMed]
- Kato K, Miyake K, Kondo N, Asano S, Takeda J, Takahashi A, et al. Conjunctival goblet cell density following cataract surgery with diclofenac versus diclofenac and rebamipide: a randomized trial. Am J Ophthalmol. 2017;181:26-36. [Crossref] [PubMed]
- Cagini C, Torroni G, Mariniello M, Di Lascio G, Martone G, Balestrazzi A. Trehalose/sodium hyaluronate eye drops in post-cataract ocular surface disorders. Int Ophthalmol. 2021;41(9):3065-71. [Crossref] [PubMed] [PMC]
- Chung YW, Oh TH, Chung SK. The effect of topical cyclosporine 0.05% on dry eye after cataract surgery. Korean J Ophthalmol. 2013;27(3):167-71. [Crossref] [PubMed] [PMC]
- Vereertbrugghen A, Galletti JG. Corneal nerves and their role in dry eye pathophysiology. Exp Eye Res. 2022;222:109191. [Crossref] [PubMed]
- Martone G, Balestrazzi A, Ciprandi G, Balestrazzi A. Alpha-glycerylphosphorylcholine and D-panthenol eye drops in patients undergoing cataract surgery. J Ophthalmol. 2022;2022:1951014. [Crossref] [PubMed] [PMC]
- Fogagnolo P, Sacchi M, Ceresara G, Paderni R, Lapadula P, Orzalesi N, et al. The effects of topical coenzyme Q10 and vitamin E D-α-tocopheryl polyethylene glycol 1000 succinate after cataract surgery: a clinical and in vivo confocal study. Ophthalmologica. 2013;229(1):26-31. [Crossref] [PubMed]
- Cagini C, Di Lascio G, Torroni G, Mariniello M, Meschini G, Lupidi M, et al. Dry eye and inflammation of the ocular surface after cataract surgery: effectiveness of a tear film substitute based on trehalose/hyaluronic acid vs hyaluronic acid to resolve signs and symptoms. J Cataract Refract Surg. 2021;47(11):1430-5. [Crossref] [PubMed]
- Park Y, Hwang HB, Kim HS. Observation of influence of cataract surgery on the ocular surface. PLoS One. 2016;11(10):e0152460. [Crossref] [PubMed] [PMC]
- De Cillà S, Fogagnolo P, Sacchi M, Orzalesi N, Carini E, Ceresara G, et al. Corneal involvement in uneventful cataract surgery: an in vivo confocal microscopy study. Ophthalmologica. 2014;231(2):103-10. [Crossref] [PubMed]
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